Patentable/Patents/US-9805434
US-9805434

Content management based on dither-like watermark embedding

PublishedOctober 31, 2017
Assigneenot available in USPTO data we have
Inventorsnot available in USPTO data we have
Technical Abstract

Methods, devices and computer program products allow embedding and detection of watermarks into and from a multimedia content. One watermark embedding method includes selecting a content segment that lacks inherent features for embedding of watermarks without producing perceptible artifacts, and obtaining a first dither pattern corresponding to a first watermark symbol of a watermark symbol alphabet, where each symbol is associated with a particular dither pattern. Further, each particular dither pattern, upon combination with the multimedia content segment that lacks inherent features, produces a composite content segment without perceptible artifacts. By combining the first dither pattern with the multimedia content segment that lacks inherent features, a first composite content segment with the first embedded watermark symbol is produced. The detection of watermarks messages can be carried out quickly by examining a small portions of the multimedia because even the featureless content segments include embedded watermarks.

Patent Claims
45 claims

Legal claims defining the scope of protection, as filed with the USPTO.

1

1. A method for embedding watermarks into a multimedia content, comprising: selecting a multimedia content segment that lacks inherent features for embedding of watermarks without producing perceptible artifacts; obtaining a first dither pattern corresponding to a first watermark symbol, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, produces a composite content segment without perceptible artifacts; and combining the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern includes a sum of a plurality of selected sinusoids that produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

2

2. The method of claim 1 , wherein the multimedia content segment that lacks inherent features includes one or more of: an audio segment with audio characteristics below a predetermined threshold, an audio segment that is mute, a blank video frame, a video frame with a blanks portion, or a video frame or a section of a video frame with low visual activity.

3

3. The method of claim 1 , wherein: the watermark alphabet includes the first watermark symbol and a second watermark symbol, the autocorrelation value is a short-term autocorrelation value obtained at a specified delay or shift value, τ, the sum of the plurality of selected sinusoids that correspond to the first watermark symbol is produced by selecting sinusoids which have an integer number of periods over the delay or shift value such that Fn =n/τ, where n is an integer greater than or equal to 2, and Fn is the frequency of the nth sinusoid, and the sum of the plurality of selected sinusoids that correspond to the second watermark symbol is produced by selecting sinusoids with frequencies Fn =(n−0.5)/τ.

4

4. The method of claim 1 , wherein the plurality of the selected sinusoids include sinusoids with random phases, and the sum of the plurality of selected sinusoids is produced by adding the selected sinusoids having the random phases.

5

5. The method of claim 1 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular ratio of peak-to-root-mean-square (RMS) value.

6

6. The method of claim 1 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a peak autocorrelation value that matches predefined target value depending on a corresponding symbol value of the watermark alphabet.

7

7. The method of claim 1 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular signal-to-noise ratio (SNR) upon combination with the multimedia content segment that lacks inherent features.

8

8. The method of claim 1 , further comprising obtaining a second dither pattern corresponding to a second watermark symbol of the watermark alphabet, wherein the second dither pattern, upon combination with the multimedia content segment that lacks inherent features, produces a second composite content segment without artifacts; and combining the second dither pattern with the multimedia content segment that lacks inherent features to produce the second composite content segment with the second watermark symbol embedded therein.

9

9. A device, comprising: a processor; and a memory including processor executable code, the processor executable code when executed by the processor configures the device to: select a multimedia content segment that lacks inherent features for embedding of watermarks without producing perceptible artifacts; obtain a first dither pattern corresponding to a first watermark symbol, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, produces a composite content segment without artifacts; and combine the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern includes a sum of a plurality of selected sinusoids that produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

10

10. The device of claim 9 , wherein the multimedia content segment that lacks inherent features includes one or more of: an audio segment with audio characteristics below a predetermined threshold, an audio segment that is mute, a blank video frame, a video frame with a blanks portion, or a video frame or a section of a video frame with low visual activity.

11

11. The device of claim 9 , wherein: the watermark alphabet includes the first watermark symbol and a second watermark symbol, the autocorrelation value is a short-term autocorrelation value obtained at a specified delay or shift value, τ the sum of the plurality of selected sinusoids that correspond to the first watermark symbol is produced by selecting sinusoids which have an integer number of periods over the delay or shift value such that Fn =n/τ, where n is an integer greater than or equal to 2, and Fn is the frequency of the nth sinusoid, and the sum of the plurality of selected sinusoids that correspond to the second watermark symbol is produced by selecting sinusoids with frequencies Fn =(n−0.5)/τ.

12

12. The device of claim 9 , wherein the plurality of the selected sinusoids include sinusoids with random phases, and the sum of the plurality of selected sinusoids is produced by adding the selected sinusoids having the random phases.

13

13. The device of claim 9 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular ratio of peak-to-root-mean-square (RMS) value.

14

14. The device of claim 9 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a peak autocorrelation value that matches predefined target value depending on a corresponding symbol value of the watermark alphabet.

15

15. The device of claim 9 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular signal-to-noise ratio (SNR) upon combination with the multimedia content segment that lacks inherent features.

16

16. The device of claim 9 , the processor executable code when executed by the processor further configures the device to: obtain a second dither pattern corresponding to a second watermark symbol of the watermark alphabet, wherein the second dither pattern, upon combination with the multimedia content segment that lacks inherent features, produces a second composite content segment without artifacts; and combine the second dither pattern with the multimedia content segment that lacks inherent features to produce the second composite content segment with the second watermark symbol embedded therein.

17

17. A computer program product, embodied on one or more non-transitory computer readable media, the computer program product including program code executable by a processor, comprising: program code for selecting a multimedia content segment that lacks inherent features for embedding of watermarks without producing perceptible artifacts; program code for obtaining a first dither pattern corresponding to a first watermark symbol, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, produces a composite content segment without artifacts; and program code for combining the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern includes a sum of a plurality of selected sinusoids that produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

18

18. A method for embedding watermarks into a multimedia content, comprising: obtaining a first dither pattern corresponding to a first watermark symbol for embedding in a multimedia content segment that lacks inherent features, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, produces a composite content segment without perceptible artifacts; and combining the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern includes a sum of a plurality of selected sinusoids that produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

19

19. The method of claim 18 , wherein the multimedia content segment that lacks inherent features includes one or more of: an audio segment with audio characteristics below a predetermined threshold, an audio segment that is mute, a blank video frame, a video frame with a blanks portion, or a video frame or a section of a video frame with low visual activity.

20

20. The method of claim 18 , wherein: the watermark alphabet includes the first watermark symbol and a second watermark symbol, the autocorrelation value is a short-term autocorrelation value obtained at a specified delay or shift value, τ, the sum of the plurality of selected sinusoids that correspond to the first watermark symbol is produced by selecting sinusoids which have an integer number of periods over the delay or shift value such that Fn =n/τ, where n is an integer greater than or equal to 2, and Fn is the frequency of the nth sinusoid, and the sum of the plurality of selected sinusoids that correspond to the second watermark symbol is produced by selecting sinusoids with frequencies Fn =(n−0.5)/τ.

21

21. The method of claim 18 , wherein the plurality of the selected sinusoids include sinusoids with random phases, and the sum of the plurality of selected sinusoids is produced by adding the selected sinusoids having the random phases.

22

22. The method of claim 18 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular ratio of peak-to-root-mean-square (RMS) value.

23

23. The method of claim 18 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a peak autocorrelation value that matches predefined target value depending on a corresponding symbol value of the watermark alphabet.

24

24. The method of claim 18 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular signal-to-noise ratio (SNR) upon combination with the multimedia content segment that lacks inherent features.

25

25. A device, comprising: a processor; and a memory including processor executable code, the processor executable code when executed by the processor configures the device to: obtain a first dither pattern corresponding to a first watermark symbol for embedding in a multimedia content segment that lacks inherent features, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, producing produces a composite content segment without artifacts; and combine the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern includes a sum of a plurality of selected sinusoids that produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

26

26. The device of claim 25 , wherein the multimedia content segment that lacks inherent features includes one or more of: an audio segment with audio characteristics below a predetermined threshold, an audio segment that is mute, a blank video frame, a video frame with a blanks portion, or a video frame or a section of a video frame with low visual activity.

27

27. The device of claim 25 , wherein: the watermark alphabet includes the first watermark symbol and a second watermark symbol, the autocorrelation value is a short-term autocorrelation value obtained at a specified delay or shift value, τ, the sum of the plurality of selected sinusoids that correspond to the first watermark symbol is produced by selecting sinusoids which have an integer number of periods over the delay or shift value such that Fn =n/τ, where n is an integer greater than or equal to 2, and Fn is the frequency of the nth sinusoid, and the sum of the plurality of selected sinusoids that correspond to the second watermark symbol is produced by selecting sinusoids with frequencies Fn =(n−0.5)/τ.

28

28. The device of claim 25 , wherein the plurality of the selected sinusoids include sinusoids with random phases, and the sum of the plurality of selected sinusoids is produced by adding the selected sinusoids having the random phases.

29

29. The device of claim 25 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular ratio of peak-to-root-mean-square (RMS) value.

30

30. The device of claim 25 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a peak autocorrelation value that matches predefined target value depending on a corresponding symbol value of the watermark alphabet.

31

31. The device of claim 25 , wherein the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular signal-to-noise ratio (SNR) upon combination with the multimedia content segment that lacks inherent features.

32

32. A computer program product, embodied on one or more non-transitory computer readable media, the computer program product including program code executable by a processor, comprising: program code for obtaining a first dither pattern corresponding to a first watermark symbol for embedding in a multimedia content segment that lacks inherent features, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, produces a composite content segment without artifacts; and program code for combining the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern includes a sum of a plurality of selected sinusoids that produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

33

33. A method for embedding watermarks into a multimedia content, comprising: obtaining a first dither pattern corresponding to a first watermark symbol for embedding in a multimedia content segment that lacks inherent features, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, produces a composite content segment without perceptible artifacts; and combining the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

34

34. The method of claim 33 , wherein the multimedia content segment that lacks inherent features includes one or more of: an audio segment with audio characteristics below a predetermined threshold, an audio segment that is mute, a blank video frame, a video frame with a blanks portion, or a video frame or a section of a video frame with low visual activity.

35

35. The method of claim 33 , wherein: the watermark alphabet includes the first watermark symbol and a second watermark symbol, the autocorrelation value is a short-term autocorrelation value obtained at a specified delay or shift value, τ, each particular dither pattern includes a sum of a plurality of selected sinusoids, wherein the sum of the plurality of selected sinusoids that correspond to the first watermark symbol is produced by selecting sinusoids which have an integer number of periods over the delay or shift value such that Fn =n/τ, where n is an integer greater than or equal to 2, and Fn is the frequency of the nth sinusoid, and the sum of the plurality of selected sinusoids that correspond to the second watermark symbol is produced by selecting sinusoids with frequencies Fn =(n−0.5)/τ.

36

36. The method of claim 33 , wherein each particular dither pattern includes a sum of a plurality of selected sinusoids, and the plurality of the selected sinusoids include sinusoids with random phases, and the sum of the plurality of selected sinusoids is produced by adding the selected sinusoids having the random phases.

37

37. The method of claim 33 , wherein each particular dither pattern includes a sum of a plurality of selected sinusoids, and the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular ratio of peak-to-root-mean-square (RMS) value.

38

38. The method of claim 33 , wherein each particular dither pattern includes a sum of a plurality of selected sinusoids, and the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a peak autocorrelation value that matches predefined target value depending on a corresponding symbol value of the watermark alphabet.

39

39. A device, comprising: a processor; and a memory including processor executable code, the processor executable code when executed by the processor configures the device to: obtain a first dither pattern corresponding to a first watermark symbol for embedding in a multimedia content segment that lacks inherent features, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, producing produces a composite content segment without artifacts; and combine the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

40

40. The device of claim 39 , wherein the multimedia content segment that lacks inherent features includes one or more of: an audio segment with audio characteristics below a predetermined threshold, an audio segment that is mute, a blank video frame, a video frame with a blanks portion, or a video frame or a section of a video frame with low visual activity.

41

41. The device of claim 39 , wherein: the watermark alphabet includes the first watermark symbol and a second watermark symbol, the autocorrelation value is a short-term autocorrelation value obtained at a specified delay or shift value, τ, each particular dither pattern includes a sum of a plurality of selected sinusoids, wherein the sum of the plurality of selected sinusoids that correspond to the first watermark symbol is produced by selecting sinusoids which have an integer number of periods over the delay or shift value such that Fn =n/τ, where n is an integer greater than or equal to 2, and Fn is the frequency of the nth sinusoid, and the sum of the plurality of selected sinusoids that correspond to the second watermark symbol is produced by selecting sinusoids with frequencies Fn =(n−0.5)/τ.

42

42. The device of claim 39 , wherein each particular dither pattern includes a sum of a plurality of selected sinusoids, and the plurality of the selected sinusoids include sinusoids with random phases, and the sum of the plurality of selected sinusoids is produced by adding the selected sinusoids having the random phases.

43

43. The device of claim 39 , wherein each particular dither pattern includes a sum of a plurality of selected sinusoids, and the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a particular ratio of peak-to-root-mean-square (RMS) value.

44

44. The device of claim 39 , wherein each particular dither pattern includes a sum of a plurality of selected sinusoids, and the sum of the plurality of the selected sinusoids is produced by scaling and adding together the selected sinusoids to produce a peak autocorrelation value that matches predefined target value depending on a corresponding symbol value of the watermark alphabet.

45

45. A computer program product, embodied on one or more non-transitory computer readable media, the computer program product including program code executable by a processor, comprising: program code for obtaining a first dither pattern corresponding to a first watermark symbol for embedding in a multimedia content segment that lacks inherent features, wherein the first watermark symbol is one of a plurality of watermark symbols of a watermark alphabet, and each symbol of the watermark alphabet is associated with a particular dither pattern, each particular dither pattern, including the first dither pattern, formed as a low amplitude noise-like pattern which upon combination with the multimedia content segment that lacks inherent features, produces a composite content segment without artifacts; and program code for combining the first dither pattern with the multimedia content segment that lacks inherent features to produce a first composite content segment with the first watermark symbol embedded therein, wherein each particular dither pattern produces either a positive autocorrelation value or a negative autocorrelation value depending on a corresponding symbol value of the watermark alphabet.

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Patent Metadata

Filing Date

August 19, 2015

Publication Date

October 31, 2017

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